bioRxiv · 10.1101/2020.02.20.957225
Lutein restores synaptic functionality in a C. elegans model for mitochondrial complex I deficiency
Abstract
Complex I deficiency represents the most frequent pathogenetic cause of human mitochondriopathies. Therapeutic options for these neurodevelopmental life-threating disorders do not exist, partly due to the scarcity of appropriate model systems to study them. Caenorhabditis elegans is a genetically tractable model organism widely used to investigate neuronal pathologies. Here, we generated new C. elegans models for mitochondriopathies and showed that depletion of Complex I subunits recapitulates biochemical, cellular and neurodevelopmental aspects of the human diseases. Two models, nuo-5/NDUFS1- and lpd-5/NDUFS4-depleted animals, were exploited for a suppressor screening that identified lutein for its ability to rescue animals neurodevelopmental deficits. We uncovered overexpression of synaptic neuroligins as an evolutionarily conserved consequence of mitochondrial dysfunction, which we found to mediate an early cholinergic defect in C. elegans. We showed lutein exerts its beneficial effects by restoring neuroligin expression independently from its antioxidant activity, thus pointing to a possible novel pathogenetic target for the human disease.
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Maglioni, S., Schiavi, A., Melcher, M., Brinkmann, V., Luo, Z., Raimundo, N., Laromaine, A., Meyer, J., Distelmaier, F., Ventura, N.. 2020-02-21. Lutein restores synaptic functionality in a C. elegans model for mitochondrial complex I deficiency. https://doi.org/10.1101/2020.02.20.957225
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